首页> 外文期刊>Journal of Computational Methods in Sciences and Engineering >Numerical simulation of scavenging of an urban aerosol by filtration taking into account the presence of coagulation, condensation, and gravitational settling
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Numerical simulation of scavenging of an urban aerosol by filtration taking into account the presence of coagulation, condensation, and gravitational settling

机译:考虑到凝结,凝结和重力沉降的存在,通过过滤清除城市气溶胶的数值模拟

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摘要

This work studies the scavenging efficiencies of an average urban aerosol by means of filtration after a given mechanism of removal (coagulation, heterogeneous nucleation, and gravitational settling) as a function of time. Filtration is a simple, versatile, and economical mean for collecting samples of aerosol particles. The capture of aerosol particles by filtration is the most common method of aerosol sampling and is a widely used method for air cleaning. At low dust concentrations, fibrous filters are the most economical means for achieving high-efficiency collection of submicrometer particles. Aerosol filtration is used in diverse applications, such as respiratory protection, air cleaning of smelter effluent, processing of nuclear and hazardous materials, and clean rooms. The process of filtration is complicated, and although the general principles are well known there is a gap between theory and experiment. In this paper, we review filtration in order to provide an understanding of the properties of fibrous and porous membrane filters, the mechanisms of collection, and how collection efficiency and resistance to airflow change with filter properties and particle size.
机译:这项工作研究了在给定的清除机制(凝结,异质成核和重力沉降)随时间变化后,通过过滤对普通城市气溶胶的清除效率。过滤是收集气溶胶颗粒样品的一种简单,通用且经济的方法。通过过滤捕获气溶胶颗粒是最常见的气溶胶采样方法,并且是广泛用于空气净化的方法。在低尘埃浓度下,纤维过滤器是实现亚微米级颗粒高效收集的最经济的方法。气溶胶过滤用于多种应用,例如呼吸防护,冶炼厂废液的空气净化,核材料和危险材料的处理以及洁净室。过滤过程很复杂,尽管一般原理是众所周知的,但理论和实验之间还是有差距的。在本文中,我们将对过滤进行综述,以便对纤维和多孔膜过滤器的特性,收集机理以及收集效率和气流阻力如何随过滤器特性和粒径变化而有所了解。

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